Fatimah Is, Fadillah Ganjar, Yanti Ika, Doong Ruey-An
Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Islam Indonesia, Kampus Terpadu UII, Jl. Kaliurang Km 14, Yogyakarta 55112, Indonesia.
Institute of Analytical and Environmental Sciences, National Tsing Hua University, Hsinchu 30013, Taiwan.
Nanomaterials (Basel). 2022 Mar 1;12(5):825. doi: 10.3390/nano12050825.
Advanced oxidation processes (AOPs) utilizing heterogeneous catalysts have attracted great attention in the last decade. The use of solid catalysts, including metal and metal oxide nanoparticle support materials, exhibited better performance compared with the use of homogeneous catalysts, which is mainly related to their stability in hostile environments and recyclability and reusability. Various solid supports have been reported to enhance the performance of metal and metal oxide catalysts for AOPs; undoubtedly, the utilization of clay as a support is the priority under consideration and has received intensive interest. This review provides up-to-date progress on the synthesis, features, and future perspectives of clay-supported metal and metal oxide for AOPs. The methods and characteristics of metal and metal oxide incorporated into the clay structure are strongly influenced by various factors in the synthesis, including the kind of clay mineral. In addition, the benefits of nanomaterials from a green chemistry perspective are key aspects for their further considerations in various applications. Special emphasis is given to the basic schemes for clay modifications and role of clay supports for the enhanced mechanism of AOPs. The scaling-up issue is suggested for being studied to further applications at industrial scale.
在过去十年中,利用非均相催化剂的高级氧化工艺(AOPs)备受关注。与使用均相催化剂相比,使用包括金属和金属氧化物纳米颗粒载体材料在内的固体催化剂表现出更好的性能,这主要与其在恶劣环境中的稳定性以及可回收性和再利用性有关。据报道,各种固体载体可提高用于AOPs的金属和金属氧化物催化剂的性能;毫无疑问,利用粘土作为载体是优先考虑的选择,并已引起广泛关注。本文综述了粘土负载的金属和金属氧化物用于AOPs的合成、特点及未来展望的最新进展。金属和金属氧化物掺入粘土结构的方法和特性在合成过程中受到多种因素的强烈影响,包括粘土矿物的种类。此外,从绿色化学角度来看,纳米材料的优势是其在各种应用中进一步考虑的关键方面。特别强调了粘土改性的基本方案以及粘土载体对AOPs增强机制的作用。建议研究放大问题以进一步实现工业规模的应用。